Publications by authors named "Zhaofei Ma"

Background: Adequate staffing of primary healthcare workers (PHCWs) is essential for strengthening healthcare systems, yet high turnover intention among these workers presents a significant challenge. While existing strategies primarily target economic incentives and career progression, this study proposes that enhancing organizational justice could offer a novel and impactful approach to retention. Drawing on equity theory and self-determination theory, the study examines how organizational justice influences turnover intention and the mediating roles of both the intensity and type of work motivation.

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Solid polymer electrolytes (SPEs) have attracted considerable attention due to the rapid development of the need for more safety and powerful lithium ion batteries. The prime requirements of solid polymer electrolytes are high ion conductivity, low glass transition temperature, excellent solubility to the conductive lithium salt, and good interface stability against Li anode, which makes PEO and its derivatives potential candidate polymer matrixes. This review mainly encompasses on the synthetic development of PEO-based SPEs (PSPEs), and the potential application of the resulting PSPEs for high performance, all-solid-state lithium ion batteries.

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WS₂ is considered as a potential anode material for lithium ion batteries (LIBs) with superior theoretical capacity and stable structure with two-dimensional which facilitates to the transportation and storage of lithium ion. Nevertheless, the commercial recognition of WS₂ has been impeded by the intrinsic properties of WS₂, including poor electrical conductivity and large volume expansion. Herein, a seaweed-liked WS₂/reduced graphene oxide (rGO) composites has been fabricated through a procedure involving the self-assembling of WO₄, hexadecyl trimethyl ammonium ion with graphene oxide (GO) and the subsequent thermal treatment.

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Timely cytokinesis/septation is essential for hyphal growth and conidiation in Aspergillus nidulans. Genetic analyses have identified that A. nidulans has components of the septum initiation network (SIN) pathway; one of these, SEPH, is a key player for early events during cytokinesis.

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